• 제목/요약/키워드: Satellite Monitoring

검색결과 972건 처리시간 0.022초

저고도 전리권 관측을 위한 사운딩 로켓 실험용 IAMMAP(Ionospheric Anomaly Monitoring by Magnetometer And Plasma-Probe)의 과학적 목표와 임무 설계 (Scientific Objectives and Mission Design of Ionospheric Anomaly Monitoring by Magnetometer And Plasma-Probe (IAMMAP) for a Sounding Rocket in Low-Altitude Ionosphere)

  • 홍지민;신동윤;천세범;육상우;김진규;차원호;박성옥;이승욱;박수환;김정헌;유광선
    • 우주기술과 응용
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    • 제4권2호
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    • pp.153-168
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    • 2024
  • 사운딩 로켓은 저렴한 비용과 빠른 개발 기간을 통해 전리권이나 무중력 환경을 직접 탐사하는 유용한 도구이다. 이러한 로켓은 목표 고도에 신속하게 도달하며, 다양한 과학적 장비를 탑재하여 데이터를 실시간으로 수집할 수 있다. 페리지에어로스페이스(주)는 2024년 상반기에 첫 시험 발사를 진행한 뒤, 2025년 1월경에는 2차 성능시험 사운딩 로켓을 발사할 예정이다. 이 로켓은 제주 해상에서 발사될 예정이며, 약 150 km의 목표 고도에 총 30 kg의 탑재체를 싣고, 준궤도 영역에서 다양한 실험을 수행할 것이다. 특히, 중위도 지역의 전리권에서는 간헐적으로 전자 밀도가 증가하는 스포라딕 E층과 적도 전기제트에 의한 자기장의 미세변화를 관측할 수 있을 것으로 예상된다. 이러한 관측을 위해 KAIST 인공위성연구소에서 개발 중인 탑재체 IAMMAP(ionospheric anomaly monitoring by magnetometer and plasma-probe)의 사운딩 로켓 버전이 발사체에 실릴 예정이다. 본 연구는 중위도 지역의 전리권에 대해서 이해하고, 2차 성능시험에서의 관측 가능한 임무 설계에 중점을 두고자 한다.

위성영상과 Web을 이용한 산림형태변화 모니터링 (Monitoring of Forest Type Changement Using Satellite Image and Web)

  • 이종출;문두열;김성호;서동주
    • 한국측량학회:학술대회논문집
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    • 한국측량학회 2006년도 춘계학술발표회 논문집
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    • pp.259-263
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    • 2006
  • Development and maintenance of forests are very important at Korea which has mountainous topography of more than 60% of the national territory. Under the circumstances, variety period's data is being required for the continuous monitoring of forest area. In this study, change of forests type was analyzed using Landsat TM satellite image which have multi-spectral bands. Furthermore, change detection system for forests type was constructed on web for the periodical monitoring. By using this system, everyone can easily use for the monitoring of forest type's periodical change.

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비디오 감시 시스템을 위한 감시영상의 기록 및 검색 방법 구현 (An Implementation of Recoding & Retrieval Method for Video Monitoring System)

  • 황병곤
    • 한국위성정보통신학회논문지
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    • 제7권3호
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    • pp.140-144
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    • 2012
  • 비디오 감시시스템의 영상 기록 및 검색을 위한 고전적 방법은 감시 영상만이 가지는 특징, 즉 감시영상에서 불필요한 배경 영역과 감시 대상을 목적으로 하는 물체 영역을 분리하여 저장하는 시스템을 갖추지 않으므로 감시영상의 저장 및 검색을 하는데 있어서 많은 저장 용량이 요구되기 때문에 매우 비효율적이다. 본 논문에서 제안한 감시 영상 시스템의 기록 및 검색 방법은 비효율적 요소를 해결한 시간별 장소별로 데이터베이스를 활용하여 손쉽게 검색하는 비디오 감시 시스템으로서 기존의 방법에 비해 더욱 효율적인 감시영상의 검색을 가능하게 한다.

고해상도 위성자료를 이용한 용담댐 유역 저수위/저수량 모니터링 및 예측 기술 개발 (Development of a Storage Level and Capacity Monitoring and Forecasting Techniques in Yongdam Dam Basin Using High Resolution Satellite Image)

  • 윤선권;이성규;박경원;장상민;이진영
    • 대한원격탐사학회지
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    • 제34권6_1호
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    • pp.1041-1053
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    • 2018
  • 본 연구에서는 용담댐 유역을 대상으로 저수위/저수량 모니터링 및 예측을 위하여 고해상도 위성관측 자료를 이용하는 방법과 위성으로부터 추출한 강수량 자료로부터 가뭄지수를 이용한 저수위를 모니터링하고 SSA를 이용한 PCA방법으로 예측모델을 구축하여 가뭄을 예측하는 방법을 개발하였다. 용담댐 저수위와 SPI(3)와의 상관계수가 0.78로 매우 높은 상관성을 보였으며, 위성자료를 통하여 산정한 가뭄지수를 활용하여 댐 저수위/저수량 모니터링 및 예측 가능성을 진단하였다. SSA에 의한 주성분 분석결과 SPI(3)과 각 RC자료의 상관관계를 분석한 결과 CC=0.87~0.99의 높은 상관성을 보였으며, 표준화된 댐 저수위(N-W.S.L.)와 RC자료의 상관관계를 분석한 결과 CC=0.83~0.97의 비교적 높은 상관성을 보임을 확인하였다. 또한, Sentinel-2 위성의 MSI (Multi-Spectral Instrument) 센서로 댐수위의 변화를 모니터링하기 위해 지수 기법을 적용하여 수체 탐지 알고리즘을 개발하였으며, 용담댐유역에 대해 2016년부터 2018년까지의 수계 면적 변화를 분석하였다. 이를 기반으로 Sentinel-2 위성영상으로 추출한 수계 면적 변화를 이용하여 가뭄 감시 분야에 대한 활용 가능성을 제시하였다. 본 연구의 결과는 다양한 위성관측자료로부터 미계측 지역의 저수량 모니터링과 수문학적 가뭄 모니터링/예측에 활용이 가능할 것이다.

Development of Ground Monitoring and Control System for Korea Augmentation Satellite System

  • Daehee Won;Chulhee Choi;Eunsung Lee;Hantae Cho;Dongik Jang;Eunok Jang;Heetaek Lim;Ho Sung Lee;Jungja Kim;Joohap Choi
    • Journal of Positioning, Navigation, and Timing
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    • 제12권2호
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    • pp.185-200
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    • 2023
  • The Korea Augmentation Satellite System (KASS) is the first satellite navigation enhancement system in Korea developed in compliance with international standards. Technologies accumulated during the development process should be spread to industries such as academia and serve as the basis for developing the domestic satellite navigation field. This paper introduces the development process from design to implementation, testing, and verification of KASS control systems (KCS). First, development standards, milestones, requirements, and interface standards are presented as KCS development methods, and major functional design, physical design, and hardware/software implementation are described based on the allocated requirements. Subsequently, the verification environment, procedures, and results of the development product are covered and the developed operational and maintenance procedures are described. In addition, based on the experience gained through the development, suggestions were made for beneficial technology development and organization when promoting satellite navigation projects in the future. Since this work has important historical value for the development of domestic satellite navigation, it is expected that the development results will be shared with academia and industry in the future and be used as basic data for similar development.

Tracing the trajectory of pelagic Sargassum using satellite monitoring and Lagrangian transport simulations in the East China Sea and Yellow Sea

  • Kwon, Kyungman;Choi, Byoung-Ju;Kim, Kwang Young;Kim, Keunyong
    • ALGAE
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    • 제34권4호
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    • pp.315-326
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    • 2019
  • Northeastward drifts of massive Sargassum patches were observed in the East China Sea (ECS) and Yellow Sea (YS) by the Geostationary Ocean Color Imager (GOCI) in May 2017. Coverage of the brown macroalgae patches was the largest ever recorded in the ECS and YS. Three-dimensional circulation modeling and Lagrangian particle tracking simulations were conducted to reproduce drifting trajectories of the macroalgae patches. The trajectories of the macroalgae patches were controlled by winds as well as surface currents. A windage (leeway) factor of 1% was chosen based on sensitivity simulations. Southerly winds in May 2017 contributed to farther northward intrusion of the brown macroalgae into the YS. Although satellite observation and numerical modeling have their own limitations and associated uncertainties, the two methods can be combined to find the best estimate of Sargassum patch trajectories. When satellites were unable to capture all patches because of clouds and sea fog in the ECS and YS, the Lagrangian particle tracking model helped to track and restore the missing patches in satellite images. This study suggests that satellite monitoring and numerical modeling are complementary to ensure accurate tracking of macroalgae patches in the ECS and YS.

GPS Anomaly Analysis and Pseudorange Accuracy Improvement by Anomalous Satellite Elimination

  • Yoo, Yun-Ja;Cho, Deuk-Jae;Park, Sang-Hyun
    • 한국항해항만학회지
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    • 제34권7호
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    • pp.511-516
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    • 2010
  • GPS anomaly has increased according to the degradation of satellite performance, and many GPS users could be exposed to any kinds of error-included signals without any previous notice when unscheduled error occurred. RSIM (Reference Station Integrity Monitors) is a typical monitoring method to broadcast PRC (Pseudo Range Correction) for users. However, there were some cases that the receiver detected the anomalous satellite's signal even though it was unhealthy set, consequently it occurred a large range error. Then it is important to monitor the integrity of GPS signal and it is needed to devise the correction method of pseudorange by eliminating error-occurred PRN for notification to GPS users when it is monitored that the anomaly occurred. This paper proposes the basic concept of how to correct the pseudorange. The paper also shows the analysis results of PRN10 GPS anomaly occurred on day 39 in 2007 with corrected results by eliminating anomaly satellite (PRN10). The proposed correction method shows decreased pseudorange error range compared to the case when the anomaly satellite were used.

Satellite Monitoring and Prediction for the Occurrence of the Red Tide in the Middle Coastal Area in the South Sea of Korea

  • Yoon, Hong-Joo;Kim, Young-Seup
    • 대한원격탐사학회지
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    • 제19권1호
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    • pp.21-30
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    • 2003
  • It was studied the relationship between the red tide occurrence and the meteorological and oceanographic factors, the choice of potential area for red tide occurrence, and the satellite monitoring for red tide. From 1990 through 2001, the red tide continuously appeared and the number of red tide occurrence increased every year. Then, the red tide bloomed during the periods of July and August. An important meteorological factor governing the mechanisms of the increasing in number of red tide occurrence was heavy precipitation. Oceanographic factors of favorable marine environmental conditions for the red tide formation included warm water temperature, low salinity, high suspended solid, low phosphorus, low nitrogen. A common condition for the red tide occurrence was heavy precipitation 2∼4 days earlier, and the favorable conditions for the red tide formation were high air temperature, proper sunshine and light winds for the day in red tide occurrence. From satellite images, it was possible to monitor the spatial distributions and concentrations of red tide. It was founded the potential areas for red tide occurrence in August 2000 by CIS conception: Yeosu∼Dolsan coast, Gamak bay, Namhae coast, Marado coast, Goheung coast, Deukryang bay, respectively.

GPS 전파위협원 위치추적 시스템 구축 및 초기 운용 (Installation and Operation of a GPS Jammer Localization System)

  • 임덕원;임순;천세범;허문범
    • 한국항행학회논문지
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    • 제19권6호
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    • pp.524-533
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    • 2015
  • 본 논문에서는 GPS 전파위협원 위치추적 시스템을 설치하고 초기 운영을 실시한 결과를 분석하였다. GPS 전파위협원 위치추적 시스템은 2011년부터 한국항공우주연구원에서 개발하였으며, 4기의 전파위협 수신국, 1기의 위치추적 중앙국과 모니터링 장치로 구성된다. 2014년 12월에 시스템을 인천국제공항에 설치하였으며, 각 전파위협 수신국은 약 4 km 떨어진 건물의 옥상에 설치하였고 위치추적 중앙국과 모니터링 장치는 실내에 설치하였다. 모니터링 결과는 웹 브라우저를 통해 실시간으로 확인할 수 있으며, 한국항공우주연구원과 인천국제공항공사가 공동으로 상시 모니터링을 수행하고 있다. 초기 운영 결과, 현재까지 GPS 전파위협 신호는 유입되지 않았으나 각 수신국 주변에서 이상 신호가 유입된 사례가 있어 이러한 신호의 특성을 분석하였다.

The Application of the Next-generation Medium Satellite C-band Radar Images in Environmental Field Works

  • Han, Hyeon-gyeong;Lee, Moungjin
    • 대한원격탐사학회지
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    • 제35권4호
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    • pp.617-623
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    • 2019
  • Numerous water disasters have recently occurred all over the world, including South Korea, due to global climate change in recent years. As water-related disasters occur extensively and their sites are difficult for people to access, it is necessary to monitor them using satellites. The Ministry of Environment and K-water plan to launch the next-generation medium satellite No. 5 (water resource/water disaster satellite) equipped with C-band synthetic aperture radar (SAR) in 2025. C-band SAR has the advantage of being able to observe water resources twice a day at a high resolution both day and night, regardless of weather conditions. Currently, RADARSAT-2 and Sentinel-1 equipped with C-band SAR achieve the purpose of their launch and are used in various environmental fields such as forest structure detection and coastline change monitoring, as well as for unique purposes including the detection of flooding, drought and soil moisture change, utilizing the advantages of SAR. As such, this study aimed to analyze the characteristics of the next-generation medium satellite No. 5 and its application in environmental fields. Our findings showed that it can be used to improve the degree of precision of existing environmental spatial information such as the classification accuracy of land cover map in environmental field works. It also enables us to observe forests and water resources in North Korea that are difficult to access geographically. It is ultimately expected that this will enable the monitoring of the whole Korean Peninsula in various environmental fields, and help in relevant responses and policy supports.